Date: Fri, 29 Mar 2024 08:14:50 +0000 (UTC)
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Subject: Exported From Confluence
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The primary use of the passes tab is to create additional outputs for yo=
ur render. These are also known as Arbitrary Output Variables (AOVs).
It is also possible to create additional "passes", which are more akin t=
o Maya's render layers (which are also supported). Passes can each ha=
ve their own camera and render settings, which act as overrides of global r=
ender settings.
This UI allows you to create Display Channels (AOV selections and LPE so=
urces) and Display Drivers as their destination file (TIFF, OpenEXR, etc). =
By default, double clicking will add a new Display Channel and Driver from =
the left-hand menu to the right-hand menu. The left menu contains the prese=
t AOVs and LPE typically used for rendering. These are separated into categ=
ories:
- Custom: Input your own custom AOV or LPE
- Standard: This contains most of the built-in AOVs.
- Diagnostic: This contains a subset of the AOVs used fo=
r visualizing pixel samples and CPU Time, for example
- Lighting: This is the most common set of LPE used for adjustment in c=
ompositing, outputs such as direct diffuse, indirect specular, etc. are fou=
nd here
- Denoiser: These are the AOVs used by the Denoise utility, selecting the beauty Display Dri=
ver and enabling Denoise will denoise the Beauty after a Batch Render.
- Shadow: These are special LPE to collect shadows
- Mattes: These are Matte LPE used in conjunction with <=
a href=3D"/display/REN23/PxrMatteID">PxrMatteID
- Integrator: These are the AOVs that are built into the=
Integrator and may vary per i=
ntegrator.
When you first open the AOV tab you are presented with the outputs for t=
he default render pass.
Displays
The Displays tab shows the outputs for the selected pass. They are=
in the list on the right. The default output of the Final pass is, a=
s you might expect, rgba, the color (Ci) and alpha (a) channels of a typica=
l image. You can add other outputs by selecting from the list of presets in=
the list on the left and clicking the arrow button between the lists. &nbs=
p;Custom outputs can als=
o be added by clicking the '+' button at the bottom of the lists.
Each output has its own settings which appear below the lists when an it=
em is selected in the list of outputs. Double clicking an existing preset a=
dds it to the list for rendering with the Display Driver listed first (_dir=
ectDiffuse) and the Display Channel (source, directDiffuse) underneath. Bel=
ow we start by explaining the options for Display Drivers.
Display Settings
Enable
Allow this output to render
Display Type
Choose the output file format of the Display Driver, including Deep Data=
(DeepEXR)
OpenEXR
OpenEXR is the most common, versatile, and capable file format for rende=
rs. It is the default and recommended file type. Denoise functionality =
requires OpenEXR or TIFF types.
As RGBA
Orders Channels as RGBA order
Storage
- Tiled: Image is saved in tile formatted blocks of data
- Planar: Is stored as a scanline format
Type
- Half Precision (16-half)
- Float Precision (32-bit float)
Typically Half is good enough for color AOVs and passes. Float is recomm=
ended for Data AOVs and passes like Z depth or P. OpenEXR does not support =
lower bit depths.
Compression
- ZIPS is default and recommended for compositing workflow as it is store=
d as a single scanline
- ZIP is also useful but slightly slower in compositing packages at bundl=
es of 16 scanlines
- You can find out more about the less common choices on the Wiki page for OpenEXR
Compression Level
How much the data is compacted, for lossy schemes (such as DWAA) this ma=
y degrade final images
'it'
This is designed for rendering to =
'it' as the display device, there are no options.
DeepEXR
DeepEXR is the common format used to store deep data, or per-sample data=
used to composite objects at depth such as nesting objects in Volumes
Storage
- Tiled: Image is saved in tile formatted blocks of data
- Planar: Is stored as a scanline format
Type
- Half Precision (16-half)
- Float Precision (32-bit float)
Typically Half is good enough for color AOVs and passes. Float is recomm=
ended for Data AOVs and passes like Z depth or P
Compression
We handle merging samples internally and automatically to provide the be=
st balance between size and correctness, as such the options below are what=
is available to control final size of the output frames.
- ZIPS is default and recommended for compositing workflow as it is store=
d as a single scanline
- ZIP is also useful but slightly slower in compositing packages at bundl=
es of 16 scanlines
- You can find out more about the less common choices on the Wiki page for OpenEXR
PNG
PNGs are a common web format that include an Alpha channel for transpare=
ncy
Quantize
This option attempts to compress the color scheme to shrink the file siz=
e
Targa
Targas are a popular 8-bit (per channel) file format
Quantize
This option attempts to compress the color scheme to shrink the file siz=
e
Texture
This renders to the RenderMan .tex format directly from the renderer.
Texture Format
- Pixar: Typically the best performance
- OpenEXR: Saved as an OpenEXR format
- Tiff: Saved as the TIFF format (Note that this format cannot save files=
larger than 4GB)
Bit Depth
Set the bit depth for the output file, does not apply to OpenEXR
- Byte: Small files
- Short: Small files, more data than Byte
- Float: Large files, full precision
EXR Bit Depth
- Half Precision (16-half)
- Float Precision (32-bit float)
S and T Wrap Modes
- black: Useful for tile based workflows such as UDIM.
- clamp: Useful non-periodic texturing access.
- periodic: Useful for periodic (repeating) texture access. =
Compression
- None: No compression is performed
- Lossless: Compression performed but without losing precision
- Lossy: Compressed and further shrunk by removing details
EXR Compression
We handle merging samples internally and automatically to provide the be=
st balance between size and correctness, as such the options below are what=
is available to control final size of the output frames.
- ZIPS is default and recommended for compositing workflow as it is store=
d as a single scanline
- ZIP is also useful but slightly slower in compositing packages at bundl=
es of 16 scanlines
- You can find out more about the less common choices on the Wiki page for OpenEXR
EXR Compression Level
How much the data is compacted, for lossy schemes (such as DWAA) this ma=
y degrade final images
Tiff
Tiffs are a popular formats that can also store floating point precision=
images as well as pass data
Format
- uint8: 8-bit storage. Small file sizes typically not suitable for post =
compositing work.
- uint16: 16-bit integer storage. Small file sizes with better reproducti=
on than the 8-bit counterpart
- float32: Full 32-bit float images. Larger file sizes but best suited to=
working with in post compositing
Quantize
This option attempts to compress the color scheme to shrink the file siz=
e
Compression
- None: no compression is performed, the file is full size and lossless=
li>
- LZW: a very common lossless compression found in TIFF files.
- Packbits (RLE): fast lossless compression, less compression than LZW
- Deflate: Common lossless compression scheme
- Pixarlog: Often a good choice for compressing HDR images without losing=
highlight data
Resolution Unit
Select between inches and centimeters or none. This is similar to tellin=
g Maya your resolution per (unit)
Resolution
The number of pixels per Resolution U=
nit (above) in the ImageWidth and ImageHeight direction.
Denoise
Enable denoising for this chosen Display
Mode
- Single Frame is for a still render
- Cross-frame is for an animation or series of frames
Remap
This is described in our Filtering =
documentation
- Break Point: A value below which the color is unchanged, must be non-ne=
gative (a)
- Max Value: The max value contained, at 0 all remapping is off. This can=
not be less than the Break Point value. (b)
- Smoothness: A tweak to the second derivative at the breakpoi=
nt (the function is C(1) unless a=3D=3Db , so you don't get to specify the first =
derivative. If this parameter is 1, the function is C(2).=
Smaller values make it flatter, larger ones make it less flat. If it is bi=
gger than ~2.5, the curve has an inflection point - it curves up on the rig=
ht of the breakpoint. It is illegal to set c <=3D 0, a=
nd it is not recommended to set it to anything other than 1. The default va=
lue is 0.
Display Channels
The Display Channels are the sources used for the display drivers =
above. Typically when adding new AOVs, double clicking adds a new AOV along=
with a display driver. This means your AOVs will be split to different out=
puts.
If you wanted them to be written into a single file (or fewer file=
s) then have a display driver selected on the right when adding a new AOV a=
nd it will be added to the existing output. Below left is the default behav=
ior of a new display driver, the right is if you have an existing driver se=
lected when adding a display channel. You can use a different display drive=
r.
Once you've added a display channel, you can take a look at its se=
ttings
=
Display Channel Settings
Enable
Sets the channel as renderable or not.
Channel Type
Types used for data are usually stored as a floating point capable forma=
ts such as OpenEXR or Float Tiff
- Color
- Float
- Vector
- Normal
- Point
Channel Source
This is the source of the AOV, typically where one would specify an LPE =
for rendering.
LPE Light Group
You can manually specify a light group here to match the ones you've ass=
igned to lights or select from existing light groups you have already speci=
fic in lights using the dropdown menu. This allows for per-light (group) LP=
E output.
<=
/span>
Filter
You can use this section to override the specified filter. For most color data the inherited filter is bes=
t to match the other AOVs, but for data, you may wish to use one of the lis=
ted min, max, zmin, zmax, etc filters to avoid filtering across object edge=
s.
Filter Width
Here you can change the filter width for this channel. Note that using a=
different width may mean they will not line up or match the other AOVs.
Statistics
These options are not meant for artists specifically, they are useful op=
tions for pipeline considerations or possibly denoise applications outside =
the renderer and their usage is not required. They are exposed as useful to=
ols for the pipeline so that you do not have to alter RIB files directly.=
p>
Variance: Estimates the statistical variance of val=
ues contributing to the pixel in associated source channel.
MSE: Like variance, but diminishes towards zero as =
the number of samples increases. Though somewhat noisy itself, this can pro=
vide an estimate for the amount of mean-squared-error versus a hypothetical=
ground-truth image.
- Even: This renders the even numbered samples to this A=
OV
- Odd: This renders the odd number of samples to this AO=
V
Remap
This is described in our Filte=
ring documentation
- Break Point: A value below which the color is unchanged, must be non-ne=
gative (a)
- Max Value: The max value contained, at 0 all remapping is off. This can=
not be less than the Break Point value. (b)
- Smoothness: A tweak to the second derivative at the breakpoint (th=
e function is C(1) unless a=3D=3Db, so you don't get to specify the first derivative. If this parameter is 1=
, the function is C(2). Smaller values make it flatter, larger ones ma=
ke it less flat. If it is bigger than ~2.5, the curve has an inflection poi=
nt - it curves up on the right of the breakpoint. It is illegal to set =
;c <=3D 0, and it is not recommended to set it to anything other than 1.=
The default value is 0.
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